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首页> 外文期刊>Materials Science and Engineering >Study of mechanism, microstructure and mechanical properties of activated flux TIG welded P91 Steel-P22 steel dissimilar metal joint
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Study of mechanism, microstructure and mechanical properties of activated flux TIG welded P91 Steel-P22 steel dissimilar metal joint

机译:活性焊剂氩弧焊P91钢-P22钢异种金属接头的机理,组织和力学性能的研究

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The current work investigates activated flux TIG welding of dissimilar steel combination of 8 mm thick plates of Modified 9Cr-lMo (P91) steel and 2.25Cr-lMo (P22) steel. The effect of different fluxes namely- SiO2, TiO2, Cr2O3, MoO3 and CuO on the weld bead geometry was investigated. The possible mechanism for the increase in depth of penetration has been discussed. The integrity of the weld joint made with MoO3 flux was investigated by evaluating metallurgical and mechanical characteristics in as-welded and post weld heat treated (750 degrees C/2 h) conditions. The occurrence of carbon migration was confirmed by optical microscopy and elemental redistribution through EPMA analysis. The precipitation of carbides of M23C6 type in the carbon enriched zone was confirmed through TEM analysis. The beneficial effect of A-TIG welding in reducing the widths of carbon enriched/depleted regions at the P22 steel-weld interface after post weld heat treatment has been discussed with the help of DICTRA simulations. The weld joints failed from P22 steel base metal in both as-welded and post weld heat treated conditions during a tensile test. The impact toughness was found to be improved after post weld heat treatment.
机译:当前的工作是研究8mm厚度的9Cr-lMo(P91)改性钢板和2.25Cr-lMo(P22)钢板的异种钢组合的活性焊剂TIG焊接。研究了不同的助熔剂-SiO2,TiO2,Cr2O3,MoO3和CuO对焊缝几何形状的影响。已经讨论了增加渗透深度的可能机制。通过评估在焊接后和焊后热处理(750摄氏度/ 2小时)条件下的冶金和机械特性,研究了由MoO3助熔剂制成的焊接接头的完整性。通过光学显微镜确认了碳迁移的发生,并通过EPMA分析证实了元素的重新分布。通过TEM分析确认了M23C6型碳化物在富碳区的析出。在DICTRA模拟的帮助下,已经讨论了A-TIG焊接在减少焊后热处理后P22钢-焊接界面处富碳/贫碳区域宽度方面的有益作用。在拉伸试验期间,无论是在焊接还是在焊后热处理条件下,焊接接头均因P22钢母材失效。发现在焊接后热处理之后,冲击韧性得到改善。

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